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Transient, seasonal and interannual variability of the Taiwan Strait current

机译:台湾海峡洋流的瞬态,季节性和年际变化

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We have constructed a fine-resolution model with realistic bathymetry to study the spatial and temporal variations of circulation in the Taiwan Strait (TS). The TS model with a resolution of 3~10 km derives its open boundary conditions from a larger-scale model. The QSCAT/NCEP winds and AVHRR SST provide forcing at the sea surface. Because of the high resolution in model grids and forcing, the model achieves a previously unavailable level of agreement with most observations. On biweekly time scales surface-trapped current reversals often lead to Strait transport reversals if the northeasterly wind bursts in winter are sufficiently strong. On seasonal time scales the northward current is the strongest in summer since both summer monsoon and pressure gradient force are northward. The summer northward current appears to be relatively unimpeded by the Changyun Rise (CYR) and bifurcates slightly near the surface. With the arrival of the northeast monsoon in fall, downwind movement of China Coastal Water (CCW) is blocked by the northward current near 25.5°N and 120°E. In winter, the northward current weakens even more as the northeasterly monsoon strengthens. The CCW moves downwind along the western boundary; the CYR blocks part of the CCW and forces a U-shaped flow pattern in the northern Strait. Past studies have failed to reveal an anticyclonic eddy that develops on the northern flank of CYR in winter. On interannual time scales a weakened northeast monsoon during El Ni?o reduces advection of the cold CCW from the north and enhances intrusion of warm water from the south, resulting in warming in the TS.
机译:我们建立了具有实际测深的高分辨率模型,以研究台湾海峡(TS)环流的时空变化。分辨率为3〜10 km的TS模型是从较大规模的模型中得出其开放边界条件的。 QSCAT / NCEP风和AVHRR SST在海面提供强迫。由于模型网格和强制具有高分辨率,因此该模型与大多数观测值达成了以前无法达到的一致水平。在两周的时间尺度上,如果冬季的东北风爆发足够强,地表截留的电流逆转通常会导致海峡运输逆转。在季节性时间尺度上,由于夏季风和压力梯度力都向北,因此夏季的北向流最强。夏季的北向气流似乎不受长云升高(CYR)的阻碍,并且在地表附近稍微分叉。随着秋天的东北季风的到来,中国沿海水域(CCW)的顺风运动受到北纬25.5°E和120°E附近的北向气流的阻挡。在冬季,随着东北季风增强,北向气流减弱得更多。逆时针沿着西边界顺风而下; CYR阻塞了CCW的一部分,并在海峡北部强迫形成U形流动模式。过去的研究未能揭示冬季在CYR北侧产生的反气旋涡。在每年的时间尺度上,厄尔尼诺现象期间东北季风减弱,减少了北部冷CCW的平流,增加了南部暖水的入侵,导致了TS的变暖。

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